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椎实螺胚胎早期卵裂过程中跨细胞离子电流和质膜钙/镁ATP酶活性的细胞周期相关波动。

Cell cycle-related fluctuations in transcellular ionic currents and plasma membrane Ca/Mg ATPase activity during early cleavages of Lymnaea stagnalis embryos.

作者信息

Zivkovic Danica, Créton Robbert, Dohmen René

机构信息

Department of Experimental Zoology, University of Utrecht, Padualaan 8, 3584 CH, Utrecht, The Netherlands.

出版信息

Rouxs Arch Dev Biol. 1991 Aug;200(3):120-131. doi: 10.1007/BF00190231.

Abstract

During the first four mitotic division cycles of Lymnaea stagnalis embryos, we have detected cell cycle-dependent changes in the pattern of transcellular ionic currents and membrane-bound Ca-stimulated ATPase activity. Ionic currents ranging from 0.05 to 2.50 μA/cm have been measured using the vibrating probe technique. Enzyme activity was detected using Ando's cytochemical method (Ando et al. 1981) which reveals Ca/Mg ATPase localization at the ultrastructural level, and under high-stringency conditions with respect to calcium availability, it reveals Ca-stimulated ATPase. The ionic currents and Ca-stimulated ATPase localization have in common that important changes occur during the M-phase of the cell cycles. Minimal outward current at the vegetal pole coincides with metaphase/anaphase. Maximal inward current at the animal pole coincides with the onset of cytokinesis at that pole. Ca-stimulated ATPase is absent from one half of the embryo at metaphase/anaphase of the two- and four-cell stage, whereas it is present in all cells during the remaining part of the cell cycle. Since fluctuations of cytosolic free calcium concentrations appear to correlate with both karyokinesis and cytokinesis, we speculate that part of the cyclic pattern of Ca-stimulated ATPase localization and of the transcellular ionic currents reflects the elevation of cytosolic free calcium concentration during the M-phase.

摘要

在椎实螺胚胎的头四个有丝分裂周期中,我们检测到跨细胞离子电流模式和膜结合钙刺激ATP酶活性存在细胞周期依赖性变化。使用振动探针技术测量了范围在0.05至2.50μA/cm的离子电流。酶活性采用安藤的细胞化学方法(安藤等人,1981年)进行检测,该方法在超微结构水平揭示钙/镁ATP酶的定位,并且在钙可用性方面的高严格条件下,揭示钙刺激的ATP酶。离子电流和钙刺激的ATP酶定位的共同之处在于,在细胞周期的M期会发生重要变化。植物极的最小外向电流与中期/后期一致。动物极的最大内向电流与该极胞质分裂的开始一致。在二细胞期和四细胞期的中期/后期,胚胎的一半没有钙刺激的ATP酶,而在细胞周期的其余阶段,所有细胞中都存在该酶。由于胞质游离钙浓度的波动似乎与核分裂和胞质分裂都相关,我们推测钙刺激的ATP酶定位和跨细胞离子电流的部分周期性模式反映了M期胞质游离钙浓度的升高。

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